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Samuel Glasstone (3 May 1897 – 16 November 1986) was a British-born American academic and writer of scientific books. He authored over 40 popular textbooks on physical chemistry and electrochemistry, reaction rates, nuclear weapons effects, nuclear reactor engineering, Mars, space sciences, the environmental effects of nuclear energy and nuclear testing.
The electroactive ion present in the interfacial region experiences the interfacial potential and electrostatic work is done on the ion by a part of the interfacial electric field. It is charge transfer coefficient that signifies this part that is utilized in activating the ion to the top of the free energy barrier.
The Journal of Electroanalytical Chemistry is a peer-reviewed scientific journal on electroanalytical chemistry, published by Elsevier twice per month. It was originally established in 1959 under the current name, but was known as the Journal of Electroanalytical Chemistry and Interfacial Electrochemistry from 1967 to 1991.
Electrochemical kinetics is the field of electrochemistry that studies the rate of electrochemical processes. This includes the study of how process conditions, such as concentration and electric potential, influence the rate of oxidation and reduction reactions that occur at the surface of an electrode, as well as an investigation into electrochemical reaction mechanisms.
Electrocapillary phenomena are phenomena related to changes in the surface free energy (or interfacial tension) of charged fluid interfaces, for example that of the dropping mercury electrode (DME), or in principle, any electrode, as the electrode potential changes or the electrolytic solution composition and concentration change.
In addition to many published articles Forster was joint author of the book: Interfacial Supramolecular Assemblies : Electrochemical and Photophysical Properties, Wiley, 2003. [4] (This book is jointly authored with Johannes G. Vos, Tia E. Keyes) And joint author of the following book chapters Robert Forster, Paolo Bertoncello & T.E. Keyes. 2008.
His work dealt with kinetics (especially hydrogen evolution in electrolysis), electrocapillarity and adsorption processes, optical methods in interfacial electrochemistry, single crystal electrode processes and the electrochemical double layer. [2]
Electrochemistry and Colloid Chemistry Milliana Kroumova Kaisheva ( Bulgarian : Миляна Крумова Кайшева ) (1 November 1945 in Sofia , Bulgaria – 24 March 2003 in Sofia, Bulgaria) was a Bulgarian physical chemist, internationally known for her work in electrochemistry and colloid chemistry.